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2022年论文

信息来源: 发布日期:2023-09-13

[1] Bu Minglu, Zhang Xiaoqing, Zhou Tao, Lei Caihong*.Fully bio-based epoxy resins derived from magnolol and varying furanamines: Cure kinetics, superior mechanical and thermal properties[J].European Polymer Journal,2022, 180.

[2] Chen Y, Zhang Y,Liang W, Xu H, Dong Z, Xu J, Lei C.In situ-prepared poly(ether-ester)-based gel polymer electrolytes for high-performance lithium metal batteries[J].Chemical Communications,2022, 58 (85): 11961-11964.

[3] 陈壮鑫,雷彩红,薛南翔,袁子丹,陈加强,董智贤.发泡工艺对PLA/PBAT复合材料发泡结构的影响[J].塑料,2022,51(05):102-107.

[4] 衡月,薛南翔,陈壮鑫,雷彩红,徐睿杰.聚乙烯/石蜡油共混体系动态流变行为和相容性[J].中国塑料,2022,36(02):13-18.DOI:10.19491/j.issn.1001-9278.2022.02.003.

[5] Chen Yang, Zhang Yin, Liang Weiguo, Xu Hongli, Dong Zhixian, Xu Jinbao, Lei Caihong*.In situ-prepared poly(ether-ester)-based gel polymer electrolytes for high-performance lithium metal batteries[J].Chemical Communications,2022, 58 (85): 11961-11964.

[6] Hu Guoliang, Zhang Xiaoqing, Bu Minglu, Lei Caihong*.Toughening and strengthening epoxy resins with a new bi-DOPO biphenyl reactive flame retardant[J].European Polymer Journal,2022,178.

[7] Xu Jinbao, Liang Weiguo, Zhang Jie, Dong Zhixian, Lei Caihong*.Synthesis of side-chain functional Poly(e-caprolactone) via the versatile and robust organo-promoted esterification reaction[J].European Polymer Journal,2022, 179.

[8] Zhang Yanmei, Xing Qingsong, Chen Anfu, Li Mingke, Qin Guofeng, Zhang Jingjing, Lei Caihong*.Turning hierarchically micro-/nanostructured polypropylene surfaces robustly superhydrophobic via tailoring contact line density of mushroom-shaped nanostructure[J].Chemical Engineering Science,2022, 262.

[9] Hang Gu, Guofeng Qin, Anfu Chen*, Mingke Li, Dejie Huang, Zhangyuan Peng, Jingjing Zhang, Caihong Lei*. Directional Migration and Distribution of Magnetic Microparticles in Polypropylene-Matrix Magnetic Composites Molded by an Injection Molding Assisted by External Magnetic Field[J]. Materials, 2022,15(13), 4632.

[10] 梁烨琳,田子钦,黄恒辉,谢嘉宜,徐睿杰,雷彩红.低分子量级分对熔体拉伸聚乳酸流延膜结构和性能的影响[J].高分子材料科学与工程,2021,37(12):98-102+110.DOI:10.16865/j.cnki.1000-7555.2021.0300.

[11] Xu Ruijie*, Yin Liangdong, Chen Jiangqiang, Xie Jiayi, Yin Zefeng, Lei Caihong*. The effect of melt drawing ratio on the crystal structural change and performance of polyketone extrusion cast film[J]. Journal of Polymer Science, 2022,60(16), 2465-2475.

[12] Chuyi Qi, Zhixian Dong*, Yuekai Huang, Jinbao Xu, and Caihong Lei*. Tough, Anti-Swelling Supramolecular Hydrogels Mediated by Surfactant–Polymer Interactions for Underwater Sensors[J]. Applied Materials & Interfaces, 2022, 15(26), 30385-30397.

[13] Runpeng Zeng,Chuyi Qi, Shuxin Lu, Lele Jin, Jinbao Xu, Zhixian Dong*, Caihong Lei*.Hydrophobic association and ionic coordination dual crossed-linked conductive hydrogels with self-adhesive and self-healing virtues for conformal strain sensors[J]. Journal of Applied Polymer Science,2022,60(5), 812-824.

[14] Chuyi Qi, Zhixian Dong*, Yuekai Huang, Jinbao Xu, Caihong Lei *. Tough, anti-swelling supramolecular hydrogels mediated by surfactant-polymer interactions for underwater sensors. ACS Applied Material & Interface, 2022, 14: 30385-30397.

[15] Runpeng Zeng, Chuyi Qi, Shuxin Lu, Jinbao Xu, ChenZhao, Zhixian Dong*, Caihong Lei *. Hydrophobic association and ionic coordination dual crossed-linked conductive hydrogels with self-adhesive and self-healing virtues for conformal strain sensors.Journal of Polymer Science,2022, 60(5):812-824.

[16] Runpeng Zeng, Shuxin Lu, Chuyi Qi, Jinbao Xu, Zhixian Dong*, Caihong Lei *. Polyacrylamide carboxymethyl chitosan double-network hydrogels with high onductivity and mechanical toughness for flexible sensors. Journal of Applied Polymer Science,2022, 139(16):51993.

[17] 曾润鹏,卢淑欣,戚楚怡,董智贤。纳米磷酸锆为载体的复合发泡剂的制备及应用。塑料,2022,51(2):95-100.

[18] 黄云刚,黄维龙,洪浩群,张海燕.界面改性对聚丙烯-玻璃纤维复合材料力学性能影响[J].复合材料学报,

2022,39(07):31563166.DOI:10.13801/j.cnki.fhclxb.20210916.006.

[19] Yang X, Hong H, Zhang H, et al.Highly spectrally selective dual-layer cellulose-based composite material for daytime radiative cooling [J]. Express Polym Lett, 2022, 16(6): 665-76.

[20] Hongxin Yao, Yongkang Zuo, Yiye Song, Wenyan Huang, Qimin Jiang, Xiaoqiang Xue, Li Jiang, Jinbao Xu*, Hongjun, Yang*,Bibiao Jiang*. Precisely Tailoring and Renewing Polymers: An Efficient Strategy for Polymer Recycling. Macromolecular Chemistry and Physics. 2022, 223, 2200117.

[21] Yang Chen, Yin Zhang, Weiguo Liang, Hongli Xu, Zhixian Dong, Jinbao Xu*, Caihong Lei*. In Situ Prepared Poly(ether-ester)-Based Gel Polymer Electrolytes for High-Performance Lithium Metal Batteries. Chemical Communications. 2022, 58, 11961.

[22] Jinbao Xu*, Weiguo Liang, Jie Zhang,Zhixian Dong, Caihong Lei*. Synthesis of Side-Chain Functional Poly(ε-caprolactone) by the Versatile and Robust Organo-Catalyzed Esterification. European Polymer Journal. 2022, 179,111526.

[23] Jinbao Xu*, Wenhao Xiao, Siheng Zhang,Zhixian Dong, Caihong Lei*. Synthesis and Characterization of Polyurethane with Poly(ether-ester) Diols Soft Segments Consisted by Ether and Ester Linkages in One Repeating Unit. European Polymer Journal. 2022, 179, 111553.

[24] Guoliang Hu, Xiaoqing Zhang*, Minglu Bu, Caihong Lei. Toughening and strengthening epoxy resins with a new bi-DOPO biphenyl reactive flame retardant. European Polymer Journal, 2022,178, 1111488.

[25] Minglu Bu, Xiaoqing Zhang*, Tao Zhou, Caihong Lei, Fully bio-based epoxy resins derived from magnolol and varying furan amines: Cure kinetics, superior mechanical and thermal properties. European Polymer Journal, 2022, 180, 111595. European Polymer Journal.

[26] Jinghong Liu, Xiaoqing Zhang*, Sihui Liu, Caihong Lei. Char Structure and Charring Mechanism ofPhosphazene-Based Epoxy Resin duringCombustion. Polymer Degradation and Stability, 2022,200, 109927.

[27] Sihui Liu, Xiaoqing Zhang*, Minglu Bu, Caihong Lei. Properties Tailoring of biobased epoxy resins by regulating the degree of polymerization of oligomers. European Polymer Journal , 2022, 173, 111253.

[28]Guoquan Liu,Shuai Wen, Yongfeng Wang, Jingjing Zhang*,Shijun Huang,Anfu Chen. Exfoliation and distribution behavior of graphene nanoplatelets inpolystyrene-based foams fabricated by supercritical CO2 assisted microcellular foaming. Chemical Engineering Science,2022, 249:117331.

[29]Ziwei Xu, Jinyi Deng, Yongjian Lai, Jianming Chen, Yirong Chen, Shijun Huang, Anfu Chen, Jingjing Zhang*, Caihong Lei*. Study on the exfoliation mechanism of graphene nanoplatelets in the polypropylene/graphene nanoplatelets composites under the elongational flow generated by convergent-divergent channels. Journal of Materials Science. 2022, 57:5467-5481.

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